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相关论文: Chiral Higgs Mode in Nematic Superconductors

200 篇论文

Charge order in cuprate superconductors is a possible source of anomalous electronic properties in the underdoped regime. Intra-unit cell charge ordering tendencies point to electronic nematic order involving oxygen orbitals. In this…

强关联电子 · 物理学 2013-10-29 S. Bulut , W. A. Atkinson , A. P. Kampf

The dynamics of excitations with different symmetry is investigated in the superconducting (SC) and normal state of the high-temperature superconductor Bi$_{2}$Sr$_{2}$CaCu$_{2}$O$_{8+\delta}$ (Bi2212) using optical pump-probe (Pp)…

超导电性 · 物理学 2014-09-25 Y. Toda , F. Kawanokami , T. Kurosawa , M. Oda , I. Madan , T. Mertelj , V. V. Kabanov , D. Mihailovic

The spin-orbital polarization of superconducting excitations in momentum space is shown to provide distinctive marks of unconventional pairing in the presence of inversion symmetry breaking.Taking the prototypical example of an electronic…

超导电性 · 物理学 2019-10-02 Yuri Fukaya , Shun Tamura , Keiji Yada , Yukio Tanaka , Paola Gentile , Mario Cuoco

Conventional superconductors are strong diamagnets that through the Meissner effect expel magnetic fields. It would therefore be surprising if a superconducting ground state would support spontaneous magnetics fields. Such time-reversal…

超导电性 · 物理学 2015-09-02 Mikael Håkansson , Tomas Löfwander , Mikael Fogelström

Superconductivity originates from the coupling between charge carriers and bosonic excitations of either phononic or electronic origin. Identifying the most relevant pairing glue is a key step towards a clear understanding of the…

强关联电子 · 物理学 2018-05-02 M. C. Wang , H. S. Yu , Y. -F. Yang , S. N. Luo , J. Xiong , K. Jin , J. Qi

A novel chiral electron-hole (CEH) pairing mechanism is proposed to account for non-BCS superconductivity. In contrast to BCS Cooper pairs, CEH pairs exhibit a pronounced affinity to antiferromagnetism for superconductivity. The gap…

超导电性 · 物理学 2024-06-18 Wanpeng Tan

We investigate the nature of the time-reversal breaking pairing state in the hole-doped monolayer MoS$_{2}$ on the basis of the realistic three-orbital attractive Hubbard-like model with the atomic spin-orbit coupling. Due to the multi-band…

超导电性 · 物理学 2019-08-27 Rikuto Oiwa , Yuki Yanagi , Hiroaki Kusunose

We investigate the possibility of spatially inhomogeneous chiral and Cooper, or superconducting, pairing in the (1+1)-dimensional model by Chodos et al [ Phys. Rev. D61, 045011 (2000)] generalized to continuous chiral invariance. The…

高能物理 - 理论 · 物理学 2015-06-16 D. Ebert , T. G. Khunjua , K. G. Klimenko , V. Ch. Zhukovsky

The Higgs mode is a key component in the spontaneous breaking of a continuous symmetry along with the Nambu-Goldstone mode, and has been studied extensively for homogeneous systems. We consider it for inhomogeneous systems, using the…

量子气体 · 物理学 2025-08-11 Kensuke Kakimoto , Junichi Takahashi , Yoshiya Yamanaka

We study the superfluid and insulating phases of interacting bosons on the triangular lattice with an inverted dispersion, corresponding to frustrated hopping between sites. The resulting single-particle dispersion has multiple minima at…

量子气体 · 物理学 2014-05-07 Michael P. Zaletel , S. A. Parameswaran , Andreas Rüegg , Ehud Altman

Below a continuous symmetry breaking phase transition, the relevant collective excitations are due to longitudinal and transverse fluctuations of the order parameter, which are referred to as Higgs and Goldstone modes, respectively. In…

We investigate the nematic and loop-current type orders that may arise as vestigial precursor phases in a model with an underlying pair-density wave (PDW) instability. We discuss how such a vestigial phase gives rise to a highly anisotropic…

超导电性 · 物理学 2023-04-07 Jonatan Wårdh , Mats Granath

Fully gapped two-dimensional superconductors coupled to dynamical electromagnetism are known to exhibit topological order. In this work, we develop a unified low-energy description for spin-singlet paired states by deriving topological…

超导电性 · 物理学 2017-01-17 Sergej Moroz , Abhinav Prem , Victor Gurarie , Leo Radzihovsky

The pair density wave (PDW) superconducting state has been proposed to explain the layer- decoupling effect observed in the compound La$_{2-x}$Ba$_x$CuO$_4$ at $x=1/8$ (Phys. Rev. Lett. 99, 127003). In this state the superconducting order…

超导电性 · 物理学 2017-06-07 Rodrigo Soto-Garrido , Yuxuan Wang , Eduardo Fradkin , S. Lance Cooper

Electromagnetic mode coupling plays a key role in many resonant effects in nanophotonics. This coupling is also responsible for the appearance of bianisotropy, where electric and magnetic responses become interconnected through the…

We discuss the stability of the antiferromagnetic ground state in two spatial dimensions. We start with a general analysis, based on Gribov's current-conservation techniques, of the bosonic modes in systems with magnetic order. We argue…

超导电性 · 物理学 2012-01-19 K. Odagiri , T. Yanagisawa

Chirality is an important concept that describes the asymmetry property of a system, which usually emerges spontaneously due to mirror symmetry breaking. Such spontaneous chirality manifests predominantly as parity breaking in modern…

In quantum many-body systems with spontaneous breaking of continuous symmetries, Higgs modes emerge as collective amplitude oscillations of order parameters. Recently, Higgs mode has been observed in the ultracold Fermi gas. In the present…

量子气体 · 物理学 2019-01-30 Jun Tokimoto , Shunji Tsuchiya , Tetsuro Nikuni

We present a theoretical study of the interaction between an atom characterized by a degenerate ground state and a reciprocal environment, such as a semiconductor nanoparticle, without the presence of external bias. Our analysis reveals…

量子物理 · 物理学 2024-03-22 Mário G. Silveirinha , Hugo Terças , Mauro Antezza

Among noncentrosymmetric structures, chirality has recently been recognized as a novel source of asymmetrical charge/spin transports as exemplified by electrical magnetochiral anisotropy (EMChA) and chirality-induced spin selectivity.…

超导电性 · 物理学 2025-01-29 Takuro Sato , Hiroshi Goto , Hiroshi M. Yamamoto